Artificial joint stem and method for manufacturing artificial joint stem
In the present disclosure, an artificial joint stem includes a base and a coating film located on the base. The base includes a first region, a second region, and a third region located in sequence. The coating film contains a calcium phosphate-based material and an antimicrobial material. The coating film is located across the first region and the second region, and the third region is exposed from the coating film. The surface of the coating film located in the first region has a larger surface roughness than the surface of the base in the third region.
1 . An artificial joint stem comprising:
a base comprising a first region, a second region, and a third region located in sequence;
a layered member; and
a coating film located on the base, the coating film containing a calcium phosphate-based material and an antimicrobial material, wherein
the coating film is located across the first region and the second region,
the third region is exposed from the coating film,
a surface roughness of a surface of the coating film in the first region is larger than a surface roughness of a surface of the base in the third region,
the layered member is disposed on the first region and comprises an edge having a lower height than a height of an inner portion of the layered member.
2 . The artificial joint stem according to claim 1 , wherein the layered member is made of metal.
3 . The artificial joint stem according to claim 1 , wherein the coating film is disposed on the layered member.
4 . An artificial joint stem comprising:
a base comprising a first region, a second region, and a third region located in sequence; and
a coating film located on the base, the coating film containing a calcium phosphate-based material and an antimicrobial material, wherein
the coating film is located across the first region and the second region,
the third region is exposed from the coating film,
a surface roughness of a surface of the coating film in the first region is larger than a surface roughness of a surface of the base in the third region,
the coating film located in the second region comprises an end portion and a base portion, the base portion being located closer to the first region than the end portion is to the first region, and
a thickness of the base portion is larger than a thickness of the end portion.
5 . The artificial joint stem according to claim 1 , wherein a surface roughness of a surface of the coating film located in the second region is smaller than a surface roughness of a surface of the coating film located in the first region.
6 . The artificial joint stem according to claim 1 , wherein a surface roughness of a surface of the coating film located in the second region is larger than a surface roughness of a surface of the base in the third region.
7 . The artificial joint stem according to claim 1 , wherein a surface roughness of the base in the second region is larger than a surface roughness of the base in the third region.
8 . The artificial joint stem according to claim 1 , wherein
the base comprises an embedded portion to be embedded in a bone, and an exposed portion to be exposed from the bone, and
the embedded portion comprises at least part of the first region.
9 . The artificial joint stem according to claim 8 , wherein at least part of the coating film is disposed in a boundary region comprising a boundary between the embedded portion and the exposed portion.
10 . The artificial joint stem according to claim 9 , wherein the coating film disposed in the boundary region is disposed only on the embedded portion.
11 . An artificial hip joint comprising the artificial joint stem of claim 1 .
12 . A method for manufacturing an artificial joint stem, the method comprising:
a first surface roughening step of forming a rough surface on a first region of a base, the base comprising the first region, a second region, and a third region located in sequence; and
a coating film forming step of forming a coating film on the rough surface and the base such that the coating film extends across the first region and the second region wherein the third region is exposed, and the coating film contains a calcium phosphate-based material and an antimicrobial material, wherein
the coating film forming step comprises disposing a second protective material on the base such that a part of the second region and the third region are protected by the second protective material while the first region and an other part of the second region are exposed, and forming the coating film on the rough surface of the first region that is exposed and the other part of the second region that is exposed.
13 . The method for manufacturing an artificial joint stem according to claim 12 , wherein the first surface roughening step comprises disposing a first protective material on the base such that the second region and the third region are protected by the first protective material while the first region is exposed, and forming the rough surface in the first region that is exposed.
14 . The method for manufacturing an artificial joint stem according to claim 12 , wherein the first surface roughening step comprises forming the rough surface by at least one selected from the group consisting of thermal spraying and blasting.
15 . The method for manufacturing an artificial joint stem according to claim 13 , further comprising removing the first protective material after the first surface roughening step and before the coating film forming step.
16 . The method for manufacturing an artificial joint stem according to claim 12 , further comprising a second surface roughening step of disposing a third protective material on the base such that the third region is protected by the third protective material while the second region is exposed, and forming a second rough surface in the second region that is exposed, the second surface roughening step being performed after the first surface roughening step and before the coating film forming step.
17 . The method for manufacturing an artificial joint stem according to claim 12 , wherein
the base comprises an embedded portion to be embedded in a bone, and an exposed portion to be exposed from the bone, and
the coating film is formed to cover at least part of the embedded portion.